A role of BPTF in viral oncogenicity delineated through studies of heritable Kaposi sarcoma

Author:

Yogev Yuval1ORCID,Schaffer Moshe2ORCID,Shlapobersky Mark3,Jean Matan M.1ORCID,Wormser Ohad1ORCID,Drabkin Max1ORCID,Halperin Daniel1ORCID,Kassem Riad4ORCID,Livoff Alejandro35ORCID,Tsitrina Alexandra A.6ORCID,Asna Noam27ORCID,Birk Ohad S.18ORCID

Affiliation:

1. The Morris Kahn Laboratory of Human Genetics at the National Institute of Biotechnology in the Negev and Faculty of Health Sciences Ben‐Gurion University of the Negev Beer Sheva Israel

2. Department of Oncology, Barzilai University Medical Center, Ashkelon, and Faculty of Health Sciences Ben Gurion University of the Negev Beer Sheva Israel

3. Department of Pathology, Barzilai University Medical Center, Ashkelon, and Faculty of Health Sciences Ben Gurion University of the Negev Beer Sheva Israel

4. Department of Dermatology, Sheba Medical Center, Ramat Gan, and Sackler School of Medicine Tel Aviv University Tel Aviv Israel

5. Department of Pathology, Galilee Medical Center, and The Azrieli Faculty of Medicine Bar Ilan University Safed Israel

6. Ilse Katz Institute for Nanoscale Science and Technology Ben‐Gurion University of the Negev Beer Sheva Israel

7. Shaare Zedek Medical Center Jerusalem Israel

8. Genetics Institute, Soroka University Medical Center, Faculty of Health Sciences Ben‐Gurion University of the Negev Beer Sheva Israel

Abstract

AbstractKaposi sarcoma (KS), caused by Herpesvirus‐8 (HHV‐8; KSHV), shows sporadic, endemic, and epidemic forms. While familial clustering of KS was previously recorded, the molecular basis of hereditary predilection to KS remains largely unknown. We demonstrate through genetic studies that a dominantly inherited missense mutation in BPTF segregates with a phenotype of classical KS in multiple immunocompetent individuals in two families. Using an rKSHV.219‐infected CRISPR/cas9‐model, we show that BPTFI2012T mutant cells exhibit higher latent‐to‐lytic ratio, decreased virion production, increased LANA staining, and latent phenotype in viral transcriptomics. RNA‐sequencing demonstrated that KSHV infection dysregulated oncogenic‐like response and P53 pathways, MAPK cascade, and blood vessel development pathways, consistent with KS. BPTFI2012T also enriched pathways of viral genome regulation and replication, immune response, and chemotaxis, including downregulation of IFI16, SHFL HLAs, TGFB1, and HSPA5, all previously associated with KSHV infection and tumorigenesis. Many of the differentially expressed genes are regulated by Rel‐NF‐κB, which regulates immune processes, cell survival, and proliferation and is pivotal to oncogenesis. We thus demonstrate BPTF mutation‐mediated monogenic hereditary predilection of KSHV virus‐induced oncogenesis, and suggest BPTF as a drug target.

Publisher

Wiley

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